//! Foxhunt Critical Path Tests Library //! //! This library provides comprehensive integration tests for the Foxhunt HFT trading system. //! It includes tests for performance, safety, reliability, and functional correctness across //! all system components. #![allow(missing_docs)] // Test fixtures don't require comprehensive documentation #![allow(clippy::needless_update)] // Explicit struct update syntax for test clarity #![allow(clippy::type_complexity)] // Complex types in test fixture builders #![warn(missing_debug_implementations)] #![warn(rust_2018_idioms)] #![allow(unused_crate_dependencies)] // Suppress unused crate dependency warnings for test-only crates // In Rust 2018+, external crates are automatically available without explicit extern crate declarations /// Load test environment variables from .env.test /// /// Call this at the start of test modules that need database access pub fn load_test_env() { use std::sync::Once; static INIT: Once = Once::new(); INIT.call_once(|| { // Environment loading is optional - tests should work without .env files // Production deployments use Vault, not .env files let _ = std::env::var("DATABASE_URL"); }); } // Chaos engineering module pub mod chaos; // Test modules - external files (only enable working ones for now) // test_common is now a separate crate in testing/test-common/ // pub mod framework; // Temporarily disabled pub mod helpers; // Re-enabled after fixing imports // pub mod unit; // Temporarily disabled - has dependency issues // pub mod integration; // Temporarily disabled - missing broker modules // pub mod performance; // Temporarily disabled - missing dependencies // pub mod gpu; // Temporarily disabled - missing candle_core pub mod fixtures; pub mod utils; // Re-enabled after fixing imports // Performance utilities module pub mod performance_utils { //! Performance testing utilities and benchmarks use std::future::Future; use std::time::{Duration, Instant}; /// Maximum allowed latency for HFT operations in nanoseconds (50μs) pub const MAX_LATENCY_NANOS: u64 = 50_000; // 50μs /// Minimum required throughput for HFT operations (10k ops/sec) pub const MIN_THROUGHPUT_OPS_PER_SEC: u64 = 10_000; // 10k ops/sec /// Measure the execution time of a synchronous operation /// /// # Arguments /// * `operation` - The function to measure /// /// # Returns /// /// A tuple containing the operation result and execution duration pub fn measure_operation(operation: F) -> (R, Duration) where F: FnOnce() -> R, { let start = Instant::now(); let result = operation(); let duration = start.elapsed(); (result, duration) } /// Measure the execution time of an asynchronous operation /// /// # Arguments /// * `operation` - The async function to measure /// /// # Returns /// /// A tuple containing the operation result and execution duration pub async fn measure_async_operation(operation: F) -> (R, Duration) where F: FnOnce() -> Fut, Fut: Future, { let start = Instant::now(); let result = operation().await; let duration = start.elapsed(); (result, duration) } /// Validate that a measured latency meets HFT requirements /// /// # Arguments /// * `duration` - The measured latency /// /// * `max_latency_us` - Maximum allowed latency in microseconds /// /// # Panics /// /// Panics if the latency exceeds the specified maximum pub fn assert_hft_latency(duration: Duration, max_latency_us: u64) { let micros = duration.as_micros() as u64; assert!( micros <= max_latency_us, "Latency {}μs exceeds HFT requirement of {}μs", micros, max_latency_us ); } /// Validate that measured throughput meets HFT requirements /// /// # Arguments /// * `ops_per_sec` - Measured operations per second /// /// * `operation` - Name of the operation for error reporting /// /// # Panics /// /// Panics if throughput is below the minimum HFT requirement pub fn assert_hft_throughput(ops_per_sec: u64, operation: &str) { assert!( ops_per_sec >= MIN_THROUGHPUT_OPS_PER_SEC, "{} throughput {} ops/sec below HFT requirement of {} ops/sec", operation, ops_per_sec, MIN_THROUGHPUT_OPS_PER_SEC ); } } // Safety test modules pub mod safety { //! Safety testing utilities for error-free operations /// Safe test result type pub type SafeTestResult = Result; /// Safe test error types #[derive(Debug, Clone)] pub enum SafeTestError { /// Assertion failed with details AssertionFailed { /// Field that failed field: String, /// Expected value expected: String, /// Actual value actual: String, }, /// Thread join operation failed ThreadJoinFailed { /// Type of thread that failed thread_type: String, }, /// Operation timed out Timeout { /// Operation that timed out operation: String, /// Timeout duration in milliseconds timeout_ms: u64, }, /// Calculation failed CalculationFailed { /// Operation that failed operation: String, /// Error details details: String, }, } impl std::fmt::Display for SafeTestError { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { match self { SafeTestError::AssertionFailed { field, expected, actual, } => { write!( f, "Assertion failed for {}: expected {}, got {}", field, expected, actual ) }, SafeTestError::ThreadJoinFailed { thread_type } => { write!(f, "Thread join failed for: {}", thread_type) }, SafeTestError::Timeout { operation, timeout_ms, } => { write!( f, "Operation {} timed out after {}ms", operation, timeout_ms ) }, SafeTestError::CalculationFailed { operation, details } => { write!(f, "Calculation failed for {}: {}", operation, details) }, } } } impl std::error::Error for SafeTestError {} /// Safe assertion function that never panics pub fn safe_assert( condition: bool, field: &str, expected: &str, actual: impl std::fmt::Display, ) -> SafeTestResult<()> { if condition { Ok(()) } else { Err(SafeTestError::AssertionFailed { field: field.to_string(), expected: expected.to_string(), actual: actual.to_string(), }) } } /// Safe equality assertion pub fn safe_assert_eq( actual: &T, expected: &T, field: &str, ) -> SafeTestResult<()> { if actual == expected { Ok(()) } else { Err(SafeTestError::AssertionFailed { field: field.to_string(), expected: format!("{:?}", expected), actual: format!("{:?}", actual), }) } } } // Mock implementations for testing pub mod mocks { //! Mock implementations for testing purposes use rust_decimal::Decimal; use std::collections::HashMap; use std::sync::Arc; use tokio::sync::RwLock; /// Mock market data provider for testing /// /// Provides thread-safe mock market data with configurable prices /// for testing trading algorithms and market data processing. #[derive(Debug, Clone)] pub struct MockMarketDataProvider { /// Thread-safe storage for current prices by symbol pub prices: Arc>>, } impl MockMarketDataProvider { /// Create a new mock market data provider with default prices /// /// Initializes with BTCUSD at $50,000 and ETHUSD at $3,000 pub fn new() -> Self { let mut prices = HashMap::new(); prices.insert("BTCUSD".to_string(), Decimal::from(50000)); prices.insert("ETHUSD".to_string(), Decimal::from(3000)); Self { prices: Arc::new(RwLock::new(prices)), } } /// Set the current price for a trading symbol /// /// # Arguments /// * `symbol` - Trading symbol (e.g., "BTCUSD") /// /// * `price` - New price to set pub async fn set_price(&self, symbol: &str, price: Decimal) { let mut prices = self.prices.write().await; prices.insert(symbol.to_string(), price); } /// Get the current price for a trading symbol /// /// # Arguments /// * `symbol` - Trading symbol to look up /// /// # Returns /// * `Some(Decimal)` - Current price if symbol exists /// /// * `None` - If symbol is not found pub async fn get_price(&self, symbol: &str) -> Option { let prices = self.prices.read().await; prices.get(symbol).copied() } } impl Default for MockMarketDataProvider { fn default() -> Self { Self::new() } } } // Test configuration pub mod config { //! Test configuration utilities use rust_decimal::Decimal; /// Configuration settings for test execution /// /// Centralizes test configuration including capital, symbols, timeouts, /// and other parameters that affect test behavior. #[derive(Debug, Clone)] pub struct TestConfig { /// Starting capital amount for trading tests pub initial_capital: Decimal, /// List of trading symbols to use in tests pub test_symbols: Vec, /// Whether to enable detailed logging during tests pub enable_logging: bool, /// Maximum time allowed for test execution in seconds pub timeout_seconds: u64, /// Maximum number of retry attempts for flaky tests pub max_retries: u32, } impl Default for TestConfig { fn default() -> Self { Self { initial_capital: Decimal::from(100000), test_symbols: vec!["BTCUSD".to_string(), "ETHUSD".to_string()], enable_logging: false, timeout_seconds: 30, max_retries: 3, } } } /// Load test configuration from environment variables /// /// Reads configuration from environment variables with sensible defaults: /// - TEST_INITIAL_CAPITAL: Starting capital (default: 100,000) /// /// - TEST_SYMBOLS: Comma-separated symbols (default: "BTCUSD,ETHUSD") /// - TEST_ENABLE_LOGGING: Enable logging (default: false) /// /// - TEST_TIMEOUT_SECONDS: Test timeout (default: 30) /// - TEST_MAX_RETRIES: Maximum retries (default: 3) /// /// # Returns /// /// TestConfig with values from environment or defaults pub fn load_test_config() -> TestConfig { TestConfig { initial_capital: std::env::var("TEST_INITIAL_CAPITAL") .ok() .and_then(|s| s.parse::().ok()) .map(Decimal::from) .unwrap_or(Decimal::from(100000)), test_symbols: std::env::var("TEST_SYMBOLS") .unwrap_or_else(|_| "BTCUSD,ETHUSD".to_string()) .split(',') .map(|s| s.trim().to_string()) .collect(), enable_logging: std::env::var("TEST_ENABLE_LOGGING") .map(|s| s.to_lowercase() == "true") .unwrap_or(false), timeout_seconds: std::env::var("TEST_TIMEOUT_SECONDS") .ok() .and_then(|s| s.parse().ok()) .unwrap_or(30), max_retries: std::env::var("TEST_MAX_RETRIES") .ok() .and_then(|s| s.parse().ok()) .unwrap_or(3), } } } // Utility functions moved to utils/ module to avoid conflicts /// Generate a unique test ID for test identification /// /// Creates a monotonically increasing test ID using an atomic counter. /// /// This is useful for distinguishing between multiple test runs. /// /// # Returns /// /// A string in the format "TEST_{counter}" pub fn generate_test_id() -> String { use std::sync::atomic::{AtomicU64, Ordering}; static COUNTER: AtomicU64 = AtomicU64::new(1); format!("TEST_{}", COUNTER.fetch_add(1, Ordering::SeqCst)) } #[cfg(test)] mod tests { use super::*; use crate::config::TestConfig; use crate::mocks::MockMarketDataProvider; use rust_decimal::Decimal; #[test] fn test_lib_imports() { // Test that all imports work correctly let _config = TestConfig::default(); let _id = generate_test_id(); assert!(true); } #[tokio::test] async fn test_async_utils() { // Test async utilities let provider = MockMarketDataProvider::new(); provider.set_price("TESTUSD", Decimal::from(12345)).await; let price = provider.get_price("TESTUSD").await; assert_eq!(price, Some(Decimal::from(12345))); } }